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首页> 外文期刊>The Journal of Chemical Physics >MONTE CARLO SIMULATIONS OF THE COUNTER ION EFFECT ON THE CONFORMATIONAL EQUILIBRIUM OF THE N,N'-DIPHENYL-GUANIDINIUM ION IN AQUEOUS SOLUTION
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MONTE CARLO SIMULATIONS OF THE COUNTER ION EFFECT ON THE CONFORMATIONAL EQUILIBRIUM OF THE N,N'-DIPHENYL-GUANIDINIUM ION IN AQUEOUS SOLUTION

机译:反向离子对水溶液中N,N'-二苯基-胍基离子的构象平衡的影响的蒙特卡罗模拟

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Results of calculations for the equilibrium of the syn-syn, anti-syn, and anti-anti conformers of the N, N'-diphenyl-guanidinium ion in aqueous solution are sensitive to whether a counter ion is considered. Relative internal free energies were calculated upon MP2/6-31G*//HF/4-31G energies (second order Moller-Plesset energies obtained when using the 6-31G* basis set at geometries optimized at the Hartree-Fock level and using the 4-31G basis set) and relative solvation free energy terms were obtained by Monte Carlo simulations. Without considering a counter ion only a small fraction of the solute has been predicted to adopt the anti-anti conformation in the solution. When considering acetate and chloride counter ions with salt concentration of 0.11 mol/l at 310 K, mimicking physiological conditions, the counter ion close to the cation stabilizes the anti-anti form significantly. Though there are not local free energy minima for the present systems with close counter ions because of the relatively weak ion-ion interaction due to the largely delocalized total charge and atomic charge alternation in the cation, the constraint for the C(guanidinium)... C(carboxylate) separation of 4.6 Angstrom allows an insight into the arginine aspartate or glutamate interactions commonly found in peptides. The N-H(guanidinium)... O(carboxylate) hydrogen bonds are not stable due to thermal motion in aqueous solution. The neighboring water molecules, however, move into the space in-between the charged groups and comprise a hydrogen bonded network. Interactions with a chloride counter ion may be significant for the drug delivery process to the receptor site. Close contact between the N, N'-diphenyl guanidinium and a chloride ion is also not favored, though it may occur temporarily and then would favor the anti-anti conformer. Deviation from the relative solvation free energy obtained for the conformational change of the single cation is still some tenths of a kcal/mol with ions separated as much as 12.4 Angstrom. While solvation energetics is affected even at such a separation, solution structure around the ions can be basically characterized without considering the effect of a remote counterpart. (C) 1996 American Institute of Physics. [References: 73]
机译:N,N'-二苯基-胍盐离子在水溶液中的顺式,反式和反式构象平衡的计算结果对是否考虑使用抗衡离子很敏感。相对内部自由能是根据MP2 / 6-31G * // HF / 4-31G能量(使用6-31G *基数(在Hartree-Fock级优化的几何形状下使用)获得的二阶Moller-Plesset能量计算得出的。通过Monte Carlo模拟获得了4-31G基集)和相对溶剂化自由能项。如果不考虑抗衡离子,则只有一小部分的溶质预计会在溶液中采用抗-抗构象。当考虑到在生理条件下,在310 K下盐浓度为0.11 mol / l的乙酸根和氯离子抗衡离子时,模仿阳离子的抗衡离子可以显着稳定抗-抗形式。尽管由于阳离子中大量离位的总电荷和原子电荷的交替,由于相对较弱的离子与离子的相互作用,所以对于具有紧密抗衡离子的本系统而言,没有局部自由能的最小值,这是C(胍)的约束条件。 4.6埃的C(羧酸盐)分离可深入了解肽中常见的精氨酸天冬氨酸或谷氨酸相互作用。由于水溶液中的热运动,N-H(胍基)... O(羧酸根)氢键不稳定。然而,相邻的水分子移动到带电基团之间的空间中,并形成氢键网络。与氯离子抗衡离子的相互作用对于药物向受体部位的传递过程可能很重要。 N,N'-二苯基胍与氯离子之间的紧密接触也是不利的,尽管它可能暂时发生,然后有利于抗-反构象异构体。对于单一阳离子的构象变化,与相对溶剂化自由能的偏差仍然是千卡/摩尔的十分之一,而离子的分离距离高达12.4埃。尽管即使在这样的分离条件下溶剂化能学也会受到影响,但基本上可以表征离子周围的溶液结构,而无需考虑遥远的对应物的影响。 (C)1996年美国物理研究所。 [参考:73]

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